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Dissociation of singlet excitons dominates photocurrent improvement in high-efficiency non-fullerene organic solar cells
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作者 Qicong Li Shizhong Yue +7 位作者 Zhitao Huang Chao Li Jiaqian Sun keqian dong Zhijie Wang Kong Liu Shengchun Qu Yong Lei 《Nano Research Energy》 2024年第1期30-37,共8页
In organic solar cells,the singlet and triplet excitons dissociate into free charge carriers with different mechanisms due to their opposite spin state.Therefore,the ratio of the singlet and triplet excitons directly ... In organic solar cells,the singlet and triplet excitons dissociate into free charge carriers with different mechanisms due to their opposite spin state.Therefore,the ratio of the singlet and triplet excitons directly affects the photocurrent.Many methods were used to optimize the performance of the low-efficiency solar cell by improving the ratio of triplet excitons,which shows a long diffusion length.Here we observed that in high-efficiency systems,the proportion of singlet excitons under linearly polarized light excitation is higher than that of circularly polarized light.Since the singlet charge transfer state has lower binding energy than the triplet state,it makes a significant contribution to the charge carrier generation and enhancement of the photocurrent.Further,the positive magnetic field effect reflects that singlet excitons dissociation plays a major role in the photocurrent,which is opposite to the case of low-efficiency devices where triplet excitons dominate the photocurrent. 展开更多
关键词 polarized light organic solar cell high efficiency singlet/triplet exciton
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Submicrometer optical frequency combs based on SPPs metallic multi-ring resonators
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作者 ZHITAO HUANG FANGYUAN MA +12 位作者 keqian dong SHIZHONG YUE CHAO LI YULIN WU JUNHUI HUANG XU HAN JIAQIAN SUN ZHAOFENG LI KONG LIU ZHIJIE WANG YONG LEI SHENGCHUN QU ZHANGUO WANG 《Photonics Research》 SCIE EI CAS CSCD 2023年第12期2105-2112,共8页
Optical frequency combs(OFCs)have great potential in communications,especially in dense wavelength-division multiplexing.However,the size of traditional OFCs based on conventional optical microcavities or dispersion f... Optical frequency combs(OFCs)have great potential in communications,especially in dense wavelength-division multiplexing.However,the size of traditional OFCs based on conventional optical microcavities or dispersion fibers is at least tens of micrometers,far larger than that of nanoscale electronic chips.Therefore,reducing the size of OFCs to match electronic chips is of necessity.Here,for the first time to our knowledge,we introduce surface plasmon polaritons(SPPs)to the construction of OFCs to realize a miniature device.The thickness of our device is reduced below 1μm.Though the presence of SPPs may induce ohmic and scattering loss,the threshold of the device is obtained as 9μW,comparable to the conventional device.Interestingly,the response time is 13.2 ps,much faster than the optical counterparts.This work provides a feasible strategy for the miniaturization of OFCs. 展开更多
关键词 METALLIC FASTER feasible
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